Pilot Alignment
The lead chamfer enters a correctly sized hole and helps establish the thread axis.
Machine screw taps are small-diameter threading tools for numbered fastener sizes, typically #0 through #12. Cutting versions shear UNC or UNF profiles into a pre-drilled hole, while forming versions displace suitably ductile material. Their small cross-section makes alignment, pilot-hole control, chip management, and torque especially important.
The lead chamfer enters a correctly sized hole and helps establish the thread axis.
Ground teeth progressively cut the profile, or forming lobes displace material in a form-tap configuration.
Cutting-tap flute geometry directs small chips away from the active teeth to reduce packing.
Teeth behind the chamfer generate the finished pitch diameter and thread flanks.
Tooling is available for common machine screw sizes including #0, #1, #2, #3, #4, #5, #6, #8, #10, and #12.
Core and flute geometry are balanced to support torsional strength while retaining chip space in small diameters.
Taper, plug, and bottoming leads support gradual starting, general work, or threads near a blind-hole bottom.
Straight flute, spiral point, spiral flute, and fluteless forming styles address different hole and chip conditions.
GH pitch-limit selections support the intended allowance for Class 2B or 3B internal threads when the complete process is controlled.
| Specification | Range / Details |
|---|---|
| Diameter Sizing | Machine screw sizes #0 (0.060") through #12 (0.216") |
| Thread Systems | UNC coarse and UNF fine |
| Chamfer Profiles | Taper, typically 7–10 threads; plug, 3–5 threads; bottoming, 1–2 threads |
| Flute Geometry | Straight flute, spiral point, spiral flute, or fluteless forming |
| Shank Type | Straight cylindrical shank with square drive |
| Pitch Limits | GH1, GH2, GH3, or application-specific limits for the required internal-thread fit |
| Material / Coating | Best For | Key Advantage |
|---|---|---|
| HSS (High-Speed Steel) | Mild steel, brass, aluminum, and compatible plastics. | Impact toughness is useful for delicate small-diameter cutting edges. |
| Cobalt (HSS-Co) | Stainless steel, titanium, and higher-temperature alloys. | Improved hot hardness helps resist edge dulling in tougher and more abrasive materials. |
| TiN / TiAlN Coating | Automated production in compatible workpiece materials. | A suitable coating can reduce friction, limit adhesion, and improve wear resistance on small teeth. |
Choose tap substrate, coating, chamfer, flute style, and cutting fluid according to material, hole type, thread fit, machine control, and production volume.
Run controlled tapping cycles for small threaded holes in brackets, housings, and chassis.
Produce miniature threads in turned medical, electronics, and aerospace components.
Tap repeated small holes in high-volume hardware and electronics assemblies.
Support prototype, instrument-making, and repair work where alignment and torque can be controlled.
Produces small mounting threads in chassis, circuit-board standoffs, and device housings.
Threads components for optical equipment, sensors, diagnostic equipment, and fine mechanisms.
Supports repeatable threaded-hole production in small hardware and appliance components.
Prepares mounting holes for sensors, switches, control housings, and trim assemblies.
Machine screw taps use numbered sizes from #0 through #12, with major diameters from 0.060 inch to 0.216 inch. Common fractional tap series generally begin at 1/4 inch.
Use a taper chamfer for gradual starting, a plug chamfer for general through-hole and sufficiently deep blind-hole work, or a bottoming chamfer when full threads must approach the base of a blind hole.
Use the specified pilot-hole size, maintain axial alignment, control runout and torque, apply suitable cutting fluid, and select spiral point geometry for through holes or spiral flute geometry for blind holes when chip direction requires it.
Class 2B is common for commercial internal machine-screw threads, while Class 3B provides a tighter fit. The tap's pitch limit must be selected with material behavior, coating allowance, and the required finished-thread inspection limits.
Bauron can review non-standard pitches, custom pitch-diameter limits, extended shanks, flute and chamfer geometries, substrates, and coatings for small-thread applications.
Bauron provides design and engineering support for numbered thread sizes, pitch limits, chamfer lengths, flute styles, shank geometry, substrates, and coatings. Share the part drawing and tapping process for technical review.
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